Publications

Sl. No.Publication Citation
90
Lipid vesicles induced ordered nanoassemblies of Janus nanoparticles

Zhu Y., Sharma A., Spangler E.J., Carrillo J.Y., Kumar P.B.S., Laradji M.Soft Matter10.1039/d2sm01693a
0
89Collective vortical motion and vorticity reversals of self-propelled particles on circularly patterned substrates
Wen H., Zhu Y., Peng C., Kumar P.B.S., Laradji M.Physical Review E10.1103/PhysRevE.107.024606
0
88Active membrane recycling induced morphology changes in vesicles
Sachin Krishnan T.V., Sunil Kumar P.B.Frontiers in Physics10.3389/fphy.2022.1003558
1
87Sorting of proteins with shape and curvature anisotropy on a lipid bilayer tube
Vyas P., Kumar P.B.S., Das S.L.Soft Matter10.1039/d2sm00077f
5
86Collective motion of cells modeled as ring polymers
Wen H., Zhu Y., Peng C., Kumar P.B.S., Laradji M.Soft Matter10.1039/d1sm01640g
1
85Active Remodeling of Chromatin and Implications for In Vivo Folding
Natesan R., Gowrishankar K., Kuttippurathu L., Kumar P.B.S., Rao M.Journal of Physical Chemistry B10.1021/acs.jpcb.1c08655
2
84Penetrant-Induced Glass-like Transition in Thin Chitosan Films
Murali A., Ganesan M., Satapathy D.K., Kumar P.B.S.Journal of Physical Chemistry B10.1021/acs.jpcb.1c07903
1
83Conformational behavior and self-assembly of disjoint semi-flexible ring polymers adsorbed on solid substrates
Zhu Y., Kumar P.B.S., Laradji M.Soft Matter10.1039/d1sm00500f
2
82Binding, unbinding and aggregation of crescent-shaped nanoparticles on nanoscale tubular membranesSpangler E.J., Olinger A.D., Kumar P.B.S., Laradji M.Soft Matter10.1039/d0sm01642j2
81Modification of lipid membrane compressibility induced by an electric field
Prathyusha K.R., Pagonabarraga I., Kumar P.B.S.Physical Review E10.1103/PhysRevE.102.062413
3
80Models for membrane curvature sensing of curvature generating proteins
Krishnan T.V.S., Das S.L., Kumar P.B.S.Pramana – Journal of Physics10.1007/s12043-020-1915-z
5
79Adhesion and Aggregation of Spherical Nanoparticles on Lipid Membranes
Laradji M., Kumar P.B.S., Spangler E.J.Chemistry and Physics of Lipids10.1016/j.chemphyslip.2020.104989
3
78Correction to: Linking catalyst-coated isotropic colloids into ‘active’ flexible chains enhances their diffusivity
(ACS Nano (2017) 11: 10 (10025-10031) DOI: 10.1021/acsnano.7b04265)
Biswas B., Manna R.K., Laskar A., Kumar P.B.S., Adhikari R., Kumaraswamy G.ACS Nano10.1021/acsnano.9b03970
2
77Transition from curvature sensing to generation in a vesicle driven by protein binding strength and membrane tension
Sachin Krishnan T.V., Das S.L., Kumar P.B.S.Soft Matter10.1039/c8sm02623h
14
76Emergent topological phenomena in active polymeric fluids
Manna R.K., Kumar P.B.S.Soft Matter10.1039/c8sm01981a
8
75Toward Transferable Coarse-Grained Potentials for Poly-Aromatic Hydrocarbons: A Force Matching Approach
Tripathy M., Agarwal U., Kumar P.B.S.Macromolecular Theory and Simulations10.1002/mats.201800040
6
74Protein-induced morphological deformations of biomembranesKumar P.B.S., Laradji M.Physics of Biological Membranes10.1007/978-3-030-00630-3_200
73Lipid-protein interaction induced domains: Kinetics and conformational changes in multicomponent vesicles
Sreeja K.K., Kumar P.B.S.Journal of Chemical Physics10.1063/1.5022494
6
72Kosmotropic effect leads to LCST decrease in thermoresponsive polymer solutions
Bharadwaj S., Sunil Kumar P.B., Komura S., Deshpande A.P.Journal of Chemical Physics10.1063/1.5012838
13
71Stability of membrane-induced self-assemblies of spherical nanoparticles
Spangler E.J., Kumar P.B.S., Laradji M.Soft Matter10.1039/c8sm00537k
13
70Linking Catalyst-Coated Isotropic Colloids into “active” Flexible Chains Enhances Their Diffusivity
Biswas B., Manna R.K., Laskar A., Kumar P.B.S., Adhikari R., Kumaraswamy G.ACS Nano10.1021/acsnano.7b04265
35
69Molecular Structuring and Percolation Transition in Hydrated Sulfonated Poly(ether ether ketone) Membranes
Tripathy M., Kumar P.B.S., Deshpande A.P.Journal of Physical Chemistry B10.1021/acs.jpcb.7b01045
15
68Numerical insights into the phase diagram of p-atic membranes with spherical topology
Hansen A.G., Ramakrishnan N., Sunil Kumar P.B., Ipsen J.H.European Physical Journal E10.1140/epje/i2017-11515-7
2
67Spherically Symmetric Solvent is Sufficient to Explain the LCST Mechanism in Polymer Solutions
Bharadwaj S., Kumar P.B.S., Komura S., Deshpande A.P.Macromolecular Theory and Simulations10.1002/mats.201600073
4
66Colloidal transport by active filaments
Manna R.K., Kumar P.B.S., Adhikari R.Journal of Chemical Physics10.1063/1.4972010
20
65Exploring large-scale phenomena in composite membranes through an efficient implicit-solvent modelLaradji M., Sunil Kumar P.B., Spangler E.J.Journal of Physics D: Applied Physics10.1088/0022-3727/49/29/29300118
64How Much Can We Coarse-Grain while Retaining the Chemical Specificity? A Study of Sulfonated Poly(ether ether ketone)
Tripathy M., Deshpande A.P., Kumar P.B.S.Macromolecular Theory and Simulations10.1002/mats201500077
5
63Flow-induced nonequilibrium self-assembly in suspensions of stiff, apolar, active filaments
Pandey A., Sunil Kumar P.B., Adhikari R.Soft Matter10.1039/c6sm02104b
16
62Membrane invagination induced by Shiga toxin B-subunit: From molecular structure to tube formation
Pezeshkian W., Hansen A.G., Johannes L., Khandelia H., Shillcock J.C., Kumar P.B.S., Ipsen J.H.Soft Matter10.1039/c6sm00464d
66
6125
60Membrane-mediated aggregation of anisotropically curved nanoparticles
Olinger A.D., Spangler E.J., Kumar P.B.S., Laradji M.Faraday Discussions10.1039/c5fd00144g
3
59Curvature inducing macroion condensation driven shape changes of fluid vesicles
Sreeja K.K., Ipsen J.H., Sunil Kumar P.B.Journal of Chemical Physics10.1063/1.4935596
18
58Monte Carlo simulations of fluid vesiclesSreeja K.K., Ipsen J.H., Sunil Kumar P.B.Journal of Physics Condensed Matter10.1088/0953-8984/27/27/27310417
57Organelle morphogenesis by active membrane remodeling
Ramakrishnan N., Ipsen J.H., Rao M., Kumar P.B.S.Soft Matter10.1039/c4sm02311k
8
56Kinetics of domain registration in multicomponent lipid bilayer membranes
Sornbundit K., Modchang C., Triampo W., Triampo D., Nuttavut N., Sunil Kumar P.B., Laradji M.Soft Matter10.1039/c4sm01059k
58
55Mesoscale computational studies of membrane bilayer remodeling by curvature-inducing proteins
Ramakrishnan N., Sunil Kumar P.B., Radhakrishnan R.Physics Reports10.1016/j.physrep.2014.05.001
13
54Combined effect of cortical cytoskeleton and transmembrane proteins on domain formation in biomembranes
Sikder M.K.U., Stone K.A., Kumar P.B.S., Laradji M.Journal of Chemical Physics10.1063/1.4890655
3
53Rheology of concentrated sulfonated poly(ether ether ketone) solutions
Gupta M., Deshpande A.P., Kumar P.B.S.Journal of Applied Polymer Science10.1002/app.40044
0
5227th Annual CSP Workshops on “Recent Developments in Computer Simulation Studies in Condensed Matter Physics”, CSP 2014 A computational study of blebbing in lipid membranesSpangler E., Kumar P.B.S., Laradji M.Physics Procedia10.1016/j.phpro.2014.08.1283
51Dynamics of a polyelectrolyte in simple shear flow
Jayasree K., Kumar Manna R., Banerjee D., Kumar P.B.S.Journal of Chemical Physics10.1063/1.4837218
4
50Shear-thinning and isotropic-lamellar-columnar transition in a model for living polymersPrathyusha K.R., Deshpande A.P., Laradji M., Sunil Kumar P.B.Soft Matter10.1039/c3sm51715b38
49Hydrodynamic instabilities provide a generic route to spontaneous biomimetic oscillations in chemomechanically active filaments
Laskar A., Singh R., Ghose S., Jayaraman G., Sunil Kumar P.B., Adhikari R.Scientific Reports10.1038/srep01964
50
48Predictions of phase separation in three-component lipid membranes by the MARTINI force field
Davis R.S., Sunil Kumar P.B., Sperotto M.M., Laradji M.Journal of Physical Chemistry B10.1021/jp4000686
84
47Membrane-mediated aggregation of curvature-inducing nematogens and membrane tubulation
Ramakrishnan N., Sunil Kumar P.B., Ipsen J.H.Biophysical Journal10.1016/j.bpj.2012.12.045
14
46Anomalous freezing behavior of nanoscale liposomes
Spangler E.J., Sunil Kumar P.B., Laradji M.Soft Matter10.1039/c2sm25974e
56
45Autonomous motility of active filaments due to spontaneous flow-symmetry breaking
Jayaraman G., Ramachandran S., Ghose S., Laskar A., Bhamla M.S., Kumar P.B.S., Adhikari R.Physical Review Letters10.1103/PhysRevLett.109.158302
1
44Stiffness transition in anisotropic fiber nets
Åström J.A., Sunil Kumar P.B., Karttunen M.Physical Review E – Statistical, Nonlinear, and Soft Matter Physics10.1103/PhysRevE.86.021922
28
43Role of disclinations in determining the morphology of deformable fluid interfaces
Ramakrishnan N., Ipsen J.H., Kumar P.B.S.Soft Matter10.1039/c2sm07384f
33
42Computer simulation of cytoskeleton-induced blebbing in lipid membranes
Spangler E.J., Harvey C.W., Revalee J.D., Kumar P.B.S., Laradji M.Physical Review E – Statistical, Nonlinear, and Soft Matter Physics10.1103/PhysRevE.84.051906
25
41Modeling anisotropic elasticity of fluid membranes
Ramakrishnan N., Kumar P.B.S., Ipsen J.H.Macromolecular Theory and Simulations10.1002/mats.201100002
8
40Coarse-Grained Computer Simulations of Multicomponent Lipid Membranes
Laradji M., Sunil Kumar P.B.Advances in Planar Lipid Bilayers and Liposomes10.1016/B978-0-12-387720-8.00007-8
132
39Rheology of complex fluids
Deshpande A.P., Krishnan J.M., Kumar P.B.S.Rheology of Complex Fluids 10.1007/978-1-4419-6494-6
5
38Preface
Deshpande A.P., Krishnan J.M., Kumar P.B.S.Rheology of Complex Fluids10.1007/978-1-4419-6494-6
30
37Effects of counterion size on the attraction between similarly charged surfaces
Zelko J., Iglič A., Kralj-Iglič V., Kumar P.B.S.Journal of Chemical Physics10.1063/1.3506896
4
36Myosin motor mediated contraction is enough to produce cytokinesis in the absence of polymerisation
Åström J.A., Von Alfthan S., Sunil Kumar P.B., Karttunen M.Soft Matter10.1039/c0sm00134a
74
35Monte Carlo simulations of fluid vesicles with in-plane orientational ordering
Ramakrishnan N., Sunil Kumar P.B., Ipsen J.H.Physical Review E – Statistical, Nonlinear, and Soft Matter Physics10.1103/PhysRevE.81.041922
12
34Shear induced ordering in branched living polymer solutions
Thakur S., Prathyusha K.R., Deshpande A.P., Laradji M., Kumar P.B.S.Soft Matter10.1039/b915339j
7
33Chapter 10 Attraction of Like-Charged Surfaces Mediated by Spheroidal Nanoparticles with Spatially Distributed Electric Charge. Theory and Simulation
Bohinc K., Zelko J., Kumar P.B.S., Iglič A., Kralj-Iglič V.Advances in Planar Lipid Bilayers and Liposomes10.1016/S1554-4516(09)09010-3
81
32Phase behavior of multicomponent membranes: Experimental and computational techniques
Bagatolli L., Sunil Kumar P.B.Soft Matter10.1039/b901866b
15
31Aster formation and rupture transition in semi-flexible fiber networks with mobile cross-linkers
Åström J.A., Kumar P.B.S., Karttunen M.Soft Matter10.1039/b815892d
10
30Coarsening through directed droplet coalescence in fluid-fluid phase separation
Thakur S., Pullarkat P.A., Kumar P.B.S.Physical Review E – Statistical, Nonlinear, and Soft Matter Physics10.1103/PhysRevE.80.011708
20
29Lateral organization of lipids In multi-component liposomes
Ramachandran S., Laradji M., Sunil Kumar P.B.
Journal of the Physical Society of Japan10.1143/JPSJ.78.041006
9
28Equilibrium properties of a grafted polyelectrolyte with explicit counterions
Jayasree K., Ranjith P., Rao M., Kumar P.B.S.Journal of Chemical Physics10.1063/1.3078265
1
27Dissipative particle dynamics of self-assembled multi-component lipid membranes
Laradji M., Sunil Kumar P.B.Springer Proceedings in Physics10.1007/978-3-540-85625-2_19
15
26Lipid flip-flop driven mechanical and morphological changes in model membranes
Ramachandran S., Kumar P.B.S., Laradji M.Journal of Chemical Physics10.1063/1.2981564
59
25Attraction between negatively charged surfaces mediated by spherical counterions with quadrupolar charge distributionUrbanija J., Bohinc K., Bellen A., Maset S., Iglič A., Kralj-Iglič V., Kumar P.B.S.Journal of Chemical Physics10.1063/1.297298055
24Strain hardening, avalanches, and strain softening in dense cross-linked actin networks
Åström J.A., Kumar P.B.S., Vattulainen I., Karttunen M.Physical Review E – Statistical, Nonlinear, and Soft Matter Physics10.1103/PhysRevE.77.051913
40
23Implicit-solvent mesoscale model based on soft-core potentials for self-assembled lipid membranes
Revalee J.D., Laradji M., Sunil Kumar P.B.Journal of Chemical Physics10.1063/1.2825300
30
22Self-propulsion of nematic drops: Novel phase separation dynamics in impurity-doped nematogens
Thakur S., Kumar P.B.S., Madhusudana N.V., Pullarkat P.A.Physical Review Letters10.1103/PhysRevLett.97.115701
45
21A Lattice-Boltzmann model for suspensions of self-propelling colloidal particles
Ramachandran S., Kumar P.B.S., Pagonabarraga I.European Physical Journal E10.1140/epje/i2006-10009-1
45
20Anomalously slow domain growth in fluid membranes with asymmetric transbilayer lipid distribution
Laradji M., Kumar P.B.S.Physical Review E – Statistical, Nonlinear, and Soft Matter Physics10.1103/PhysRevE.73.040901
109
19Domain growth, budding, and fission in phase-separating self-assembled fluid bilayers
Laradji M., Kumar P.B.S.Journal of Chemical Physics10.1063/1.2102894
53
18Distribution functions, loop formation probabilities, and force-extension relations in a model for short double-stranded DNA molecules
Ranjith P., Kumar P.B.S., Menon G.I.Physical Review Letters10.1103/PhysRevLett.94.138102
221
17Dynamics of domain growth in self-assembled fluid vesicles
Laradji M., Kumar P.B.S.Physical Review Letters10.1103/PhysRevLett.93.198105
55
16Self-organized pattern formation in motor-microtubule mixtures
Sankararaman S., Menon G.I., Sunil Kumar P.B.Physical Review E – Statistical Physics, Plasmas, Fluids, and Related Interdisciplinary Topics10.1103/PhysRevE.70.031905
2
15Modelling Pattern Formation in Motor-Microtubule Mixtures
Sankararaman S., Menon G.I., Sunil Kumar P.B.Physica Scripta T106,26
4
14Dynamics of a semiflexible filament under external force
Ranjith P., Sunil Kumar P.B.Physica A: Statistical Mechanics and its Applications10.1016/S0378-4371(02)01418-8
1
13Scale invariance in coarsening of binary and ternary fluids
Lakshmi K.C., Sunil Kumar P.B.Physical Review E – Statistical Physics, Plasmas, Fluids, and Related Interdisciplinary Topics10.1103/PhysRevE.67.011507
8
12Two-component fluid membranes near repulsive walls: Linearized hydrodynamics of equilibrium and nonequilibrium states
Sankararaman S., Menon G.I., Sunil Kumar P.B.Physical Review E – Statistical Physics, Plasmas, Fluids, and Related Interdisciplinary Topics10.1103/PhysRevE.66.031914
29
11Dynamics of Folding in Semiflexible Filaments Ranjith P., Kumar P.B.S.Physical Review Letters10.1103/PhysRevLett.89.01830218
10Budding dynamics of multicomponent membranes
Sunil Kumar P.B., Gompper G., Lipowsky R.Physical Review Letters10.1103/PhysRevLett.86.3911
173
9Modulated phases in multicomponent fluid membranes
Kumar P.B.S., Gompper G., Lipowsky R.Physical Review E – Statistical Physics, Plasmas, Fluids, and Related Interdisciplinary Topics10.1103/PhysRevE.60.4610
76
8Shape instabilities in the dynamics of a two-component fluid membrane
Kumar P.B.S., Rao M.Physical Review Letters10.1103/PhysRevLett.80.2489
73
7Kumar and rao Sunil Kumar P.B., Rao M.Physical Review Letters10.1103/PhysRevLett.79.11695
6Imbibition: Experiment and simulation
Kumar P.B.S., Jana D.Physica A: Statistical Mechanics and its Applications10.1016/0378-4371(95)00356-8
15
5Modulations in the diffracted intensity in chiral smectic-C liquid crystals
1
4Novel monte carlo approach to the dynamics of fluids: Single-particle diffusion, correlation functions, and phase ordering of binary fluids
Sunil Kumar P.B., Rao M.Physical Review Letters10.1103/PhysRevLett.77.1067
19
3Kinectics of phase ordering in a two-component fluid membrane
Sunil Kumar P.B., Rao M.Molecular Crystals and Liquid Crystals Science and Technology Section A: Molecular Crystals and Liquid Crystals10.1080/10587259608034588
20
2Symmetry properties of anisotropic dielectric gratings
Galatola P., Oldano C., Sunil Kumar P.B.Journal of the Optical Society of America A: Optics and Image Science, and Vision10.1364/JOSAA.11.001332
38
1Optical diffraction in chiral smectic-C liquid crystals
Suresh K.A., Sah Y., Sunil Kumar P.B., Ranganath G.S.Physical Review Letters10.1103/PhysRevLett.72.2863
22

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